Développement et implémentation d’une commande prédictive d’onduleurs de type Z-source dédiés à une installation à énergie photovoltaïque
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Université Sétif 1 - Ferhat ABBAS , Faculté de Technologie
Abstract
This research work deals with the integration of photovoltaic (PV) energy to the electrical grid by the design ofthe power electronic interface. In this context, the single-stage topology based on quasi Z-source inverter is considered. Three different approaches for MPC control of qZSI-based systems have been developed. The main objective of the first approach is to achieve good dynamic performance by controlling the input current, the DC link voltage and the three-phase output current. In addition, the proposed control ensures circuit stability by controlling the inductor current and the capacitor voltage. The second proposed MPC control is dedicated to a grid-connected PV system.The results obtained showed the system's ability to track and deliver the maximum power of the GPV with a fast tracking dynamics in addition to independently compensating the reactive power of the load connected to the PCC point. The third one proposed MMPC control, which is a modified MPC, is applied to a PV system, based on the qZSI, tied to the grid. Its objective is to minimize the power losses in the inverter switches, inject a sinusoidal current into the grid, and regulate the voltages of the capacitors. In this framework, three novel MPPT control techniques have been developed, an improved P&O MPPT algorithm, integrating a fuzzy logic controller with variable step size, an intelligent MPPT method based on FTSM and GWO algorithms in partially shaded situations on a global MPP, a novel hybrid MPPT technique using Honey Badger (HBA) and Coyote Optimizer (COA) for partially shaded PV systems.
